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小麦病原菌小麦壳针孢在植物体内形成孢子需要甘露醇-1-磷酸代谢。

Mannitol 1-phosphate metabolism is required for sporulation in planta of the wheat pathogen Stagonospora nodorum.

作者信息

Solomon Peter S, Tan Kar-Chun, Oliver Richard P

机构信息

Australian Centre for Necrotrophic Fungal Pathogens, SABC, Murdoch University, Perth 6150, Western Australia, Australia

出版信息

Mol Plant Microbe Interact. 2005 Feb;18(2):110-5. doi: 10.1094/MPMI-18-0110.

Abstract

An expressed sequence tag encoding a putative mannitol 1-phosphate dehydrogenase (Mpd1) has been characterized from the fungal wheat pathogen Stagonospora nodorum. Mpd1 was disrupted by insertional mutagenesis, and the resulting mpd1 strains lacked all detectable NAD-linked mannitol 1-phosphate dehydrogenase activity (EC 1.1.1.17). The growth rates, sporulation, and spore viability of the mutant strains in vitro were not significantly different from the wild type. The viability of the mpd1 spores when subjected to heat stress was comparable to wild type. Characterization of the sugar alcohol content by nuclear magnetic resonance spectroscopy revealed that, when grown on glucose, the mutant strains contained significantly less mannitol, less arabitol, but more trehalose than the wild-type strains. The mannitol content of fructose-grown cultures was normal. No secreted mannitol could be detected in wild type or mutants. Pathogenicity assays revealed the disruption of Mpd1 did not affect lesion development, however the mutants were unable to sporulate. These results throw new light on the role of mannitol in fungal plant interactions, suggesting a role in metabolic and redox regulation during the critical process of sporulation on senescing leaf material.

摘要

已从真菌性小麦病原体小麦壳针孢中鉴定出一个编码假定的甘露醇-1-磷酸脱氢酶(Mpd1)的表达序列标签。通过插入诱变破坏了Mpd1,所得的mpd1菌株缺乏所有可检测到的与NAD相关的甘露醇-1-磷酸脱氢酶活性(EC 1.1.1.17)。突变菌株在体外的生长速率、产孢和孢子活力与野生型无显著差异。mpd1孢子在热胁迫下的活力与野生型相当。通过核磁共振光谱对糖醇含量进行表征发现,当在葡萄糖上生长时,突变菌株所含的甘露醇、阿拉伯糖醇显著少于野生型菌株,但海藻糖更多。在果糖培养基上生长的培养物中甘露醇含量正常。在野生型或突变体中均未检测到分泌的甘露醇。致病性测定表明,Mpd1的破坏不影响病斑发育,但突变体无法产孢。这些结果为甘露醇在真菌与植物相互作用中的作用提供了新的线索,表明其在衰老叶片材料上产孢的关键过程中在代谢和氧化还原调节中发挥作用。

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